首页> 外文会议>ASME heat transfer conference >EXPERIMENTAL STUDY ON THE COMBUSTION PROCESS AND PERFORMANCE OF DIESEL ENGINES FUELED BY EMULSION DIESEL WITH NOVEL ORGANIC ADDITIVES
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EXPERIMENTAL STUDY ON THE COMBUSTION PROCESS AND PERFORMANCE OF DIESEL ENGINES FUELED BY EMULSION DIESEL WITH NOVEL ORGANIC ADDITIVES

机译:乳化柴油与新型有机添加剂燃烧的柴油机燃烧过程及性能的实验研究。

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Transportation is one of the major contributors to the world's energy consumption and greenhouse gases emissions. The need for increased efficiency has placed diesel engine in the spotlight due to its superior thermal efficiency and fuel economy over gasoline engine. However, diesel engines also face the major disadvantage of increased NO_x emissions. To address this issue, three types of emulsion fuels with different water concentrations (5%, 10% and 15% mass water) are produced and tested. Novel organic materials (glycerin and ployethoxy-ester) are added in the fuel to provide extra oxygen for improving combustion. NP-15 is added as surfactant which can help to reduce the oil and water surface tension, activates their surface, and maximizes their superficial contact areas, thereby forming a continuous and finely dispersed droplets phase. The stability of the emulsion fuels is tested under various environmental temperature for one year, and no significant separation is observed. It is better than normal emulsion fuel which can only maintain the state for up to three months. The combustion process and performance of the emulsion fuels are tested in a four-stroke, four cylinder diesel engine. The results indicate that the water droplets enclosed in the emulsion fuel explode at high temperature environment and help to break up the big oil droplets into smaller ones, thereby significantly increase the surface area of the oil droplets and enhance the heat transfer from hot gas to the fuel. As a result, the fuel evaporation is improved and the combustion process is accelerated, leading to an improved brake thermal efficiency (up to 14.2%). Meanwhile, the presence of the water causes the peak temperature of the flame to drop, thereby significantly bringing down the NO_x emissions by more than 30%.
机译:运输是导致世界能源消耗和温室气体排放的主要因素之一。由于与汽油发动机相比,柴油发动机具有更高的热效率和燃油经济性,因此对提高效率的需求已引起人们的关注。然而,柴油发动机还面临增加的NO_x排放的主要缺点。为了解决这个问题,生产并测试了三种类型的乳化燃料,它们具有不同的水浓度(5%,10%和15%质量水)。在燃料中添加了新型有机材料(甘油和乙氧基酯),以提供额外的氧气来改善燃烧。 NP-15作为表面活性剂加入,可以帮助降低油和水的表面张力,活化其表面,并使它们的表面接触面积最大化,从而形成连续且细分散的液滴相。乳化燃料的稳定性在各种环境温度下测试了一年,没有观察到明显的分离。它比普通的乳化燃料要好,后者只能维持长达三个月的状态。乳化燃料的燃烧过程和性能在四冲程,四缸柴油发动机中进行了测试。结果表明,乳化燃料中所包裹的水滴在高温环境下爆炸,有助于将大的油滴分解成较小的油滴,从而显着增加了油滴的表面积,并增强了从热气到燃料的热传递。汽油。结果,改善了燃料蒸发并加速了燃烧过程,从而提高了制动热效率(高达14.2%)。同时,水的存在使火焰的峰值温度下降,从而显着降低了NO_x排放量超过30%。

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